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Acoustic Beamforming Array Design Methods Over Irregular Shaped Areas

机译:声学波束形成阵列设计方法不规则形状区域

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摘要

Acoustic beamforming array design methods are typically suited for circular and rectangular areas. A comparison of three array design methods is presented in this paper over irregular shaped areas, including L-shapes and arches. Partial-logarithmic spiral arrays that possess their geometric center either at the origin of the array area or the centroid of the irregular shaped area are compared against randomized array designs based on maximum sidelobe level (MSL) parameters and arrays generated using a recently published array design method named the adaptive array reduction method (AARM). In the AARM, a large array is reduced to a smaller array by seeking the removed microphone that possesses the minimum value of the MSL, the main lobe width (MLW), and a lobe distortion term. The AARM is also tested in two practical cases against a partial spiral array design used at the NASA Langley low-turbulence pressure tunnel and a hypothetical rectangular wall case. In both cases, the AARM showed superior performance to the logarithmic spiral arrays in all cases based on MSL and MLW criteria. Of the three methods compared, the AARM best utilizes the full potential array aperture of an irregular area and therefore produces the best MSL, MLW, and lobe distortion values.
机译:声学波束形成阵列设计方法通常适用于圆形和矩形区域。本文在不规则形状的区域上介绍了三个阵列设计方法的比较,包括L形和拱形。在使用最近发布的阵列设计产生的最大侧链级别(MSL)参数和数组的随机阵列设计,将具有其几何中心的部分对数螺旋阵列或不规则形状区域的阵列设计进行比较。命名为自适应阵列减少方法(aarm)的方法。在AARM中,通过寻找所移除的麦克风,将大阵列减小到较小的阵列,该麦克风具有MSL的最小值,主瓣宽度(MLW)和叶失真项。 AARM还在两种实际情况下进行测试,抵御NASA兰利低湍流压力隧道和假设矩形墙壁壳体的局部螺旋阵列设计。在这两种情况下,AARM在基于MSL和MLW标准的所有情况下对对数螺旋阵列显示出优异的性能。其中三种方法比较,AARM最佳利用不规则区域的全电位阵列孔径,因此产生最佳的MSL,MLW和叶失真值。

著录项

  • 来源
    《Journal of Vibration and Acoustics》 |2021年第3期|031013.1-031013.12|共12页
  • 作者单位

    Department of Mechanics and Aerospace Engineering Southern University of Science and Technology Shenzhen 518055 China Guangdong Provincial Key Laboratory of Turbulence Research and Applications Southern University of Science and Technology Shenzhen 518055 China;

    Department of Mechanics and Aerospace Engineering Southern University of Science and Technology Shenzhen 518055 China Guangdong Provincial Key Laboratory of Turbulence Research and Applications Southern University of Science and Technology Shenzhen 518055 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    propagation and radiation; sensors and actuators;

    机译:繁殖和辐射;传感器和执行器;

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